Research Institute on Terrestrial Ecosystems (IRET), National Research Council of Italy (CNR), Via Pietro Castellino 111, 80131 Naples, Italy.
Department of Experimental Medicine, University of Campania "Luigi Vanvitelli", Via Santa Maria di Costantinopoli 16, 80138 Naples, Italy.
Nutrients. 2021 Oct 27;13(11):3831. doi: 10.3390/nu13113831.
Given their beneficial potential on human health, plant food bioactive molecules are important components influencing nutrition. Polyphenols have been widely acknowledged for their potentially protective role against several complex diseases. In particular, the polyphenols of olive oil (OOPs) emerge as the key components of many healthy diets and have been widely studied for their beneficial properties. The qualitative and quantitative profile defining the composition of olive oil phenolic molecules as well as their absorbance and metabolism once ingested are key aspects that need to be considered to fully understand the health potential of these molecules. In this review, we provide an overview of the key aspects influencing these variations by focusing on the factors influencing the biosynthesis of OOPs and the findings about their absorption and metabolism. Despite the encouraging evidence, the health potential of OOPs is still debated due to limitations in current studies. Clinical trials are necessary to fully understand and validate the beneficial effects of olive oil and OOPs on human health. We provide an update of the clinical trials based on olive oil and/or OOPs that aim to understand their beneficial effects. Tailored studies are needed to standardize the polyphenolic distribution and understand the variables associated with phenol-enriched OO. An in-depth knowledge of the steps that occur following polyphenol ingestion may reveal useful insights to be used in clinical settings for the prevention and treatment of many diseases.
鉴于植物食品生物活性分子对人类健康具有潜在益处,它们是影响营养的重要组成部分。多酚因其对多种复杂疾病的潜在保护作用而被广泛认可。特别是橄榄油中的多酚(OOPs)成为许多健康饮食的关键成分,并因其有益特性而被广泛研究。定义橄榄油酚类分子组成的定性和定量特征以及它们被摄入后的吸收率和代谢率是需要考虑的关键方面,以充分了解这些分子的健康潜力。在这篇综述中,我们通过重点关注影响 OOPs 生物合成的因素以及关于它们吸收和代谢的发现,概述了影响这些变化的关键方面。尽管有令人鼓舞的证据,但由于目前研究的局限性,OOPs 的健康潜力仍存在争议。需要进行临床试验来充分了解和验证橄榄油和 OOPs 对人类健康的有益作用。我们提供了基于橄榄油和/或 OOPs 的临床试验的最新情况,旨在了解它们的有益作用。需要进行针对性研究来标准化富含多酚的橄榄油的分布,并了解与富含酚的 OO 相关的变量。深入了解多酚摄入后发生的步骤可能会为预防和治疗许多疾病提供有用的临床见解。